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Recent Progress in the Nanoscale Evaluation of Piezoelectric and Ferroelectric Properties via Scanning Probe Microscopy

机译:扫描探针显微镜纳米压电和铁电性能纳米级评价的最新进展

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摘要

Piezoelectric and ferroelectric materials have garnered significant interest owing to their excellent physical properties and multiple potential applications. Accordingly, the need for evaluating piezoelectric and ferroelectric properties has also increased. The piezoelectric and ferroelectric properties are evaluated macroscopically using laser interferometers and polarization–electric field loop measurements. However, as the research focus is shifted from bulk to nanosized materials, scanning probe microscopy (SPM) techniques have been suggested as an alternative approach for evaluating piezoelectric and ferroelectric properties. In this Progress Report, the recent progress on the nanoscale evaluation of piezoelectric and ferroelectric properties of diverse materials using SPM‐based methods is summarized. Among the SPM techniques, the focus is on recent studies that are related to piezoresponse force microscopy and conductive atomic force microscopy; further, the utilization of these two modes to understand piezoelectric and ferroelectric properties at the nanoscale level is discussed. This work can provide guidelines for evaluating the piezoelectric and ferroelectric properties of materials based on SPM techniques.
机译:由于其出色的物理性质和多种潜在应用,压电和铁电材料在很大的兴趣下获得了显着的兴趣。因此,对压电和铁电性质的需求也增加。使用激光干涉仪和偏振电场回路测量来评估压电和铁电性能。然而,随着研究焦点从体积转向纳米化材料,已经提出了扫描探针显微镜(SPM)技术作为评估压电和铁电性能的替代方法。在这一进展报告中,总结了使用基于SPM的方法的多种材料的压电和铁电性能纳米级评估的最新进展。在SPM技术中,重点是最近与压电响应力显微镜和导电原子力显微镜相关的研究;此外,讨论了使用这两种模式以了解纳米级水平的压电和铁电特性。该工作可以提供基于SPM技术评估材料的压电和铁电性能的指导。

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